EP2291251A1 - Bookbinding wire and paper clip with biodegradable coatings - Google Patents
Bookbinding wire and paper clip with biodegradable coatingsInfo
- Publication number
- EP2291251A1 EP2291251A1 EP09734667A EP09734667A EP2291251A1 EP 2291251 A1 EP2291251 A1 EP 2291251A1 EP 09734667 A EP09734667 A EP 09734667A EP 09734667 A EP09734667 A EP 09734667A EP 2291251 A1 EP2291251 A1 EP 2291251A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- coating
- wire
- use according
- bookbinding
- biodegradable
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F45/00—Wire-working in the manufacture of other particular articles
- B21F45/16—Wire-working in the manufacture of other particular articles of devices for fastening or securing purposes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C48/00—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
- B29C48/03—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor characterised by the shape of the extruded material at extrusion
- B29C48/07—Flat, e.g. panels
- B29C48/08—Flat, e.g. panels flexible, e.g. films
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42B—PERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
- B42B5/00—Permanently attaching together sheets, quires or signatures otherwise than by stitching
- B42B5/08—Permanently attaching together sheets, quires or signatures otherwise than by stitching by finger, claw or ring-like elements passing through the sheets, quires or signatures
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42F—SHEETS TEMPORARILY ATTACHED TOGETHER; FILING APPLIANCES; FILE CARDS; INDEXING
- B42F1/00—Sheets temporarily attached together without perforating; Means therefor
- B42F1/02—Paper-clips or like fasteners
- B42F1/04—Paper-clips or like fasteners metallic
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C48/00—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
- B29C48/03—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor characterised by the shape of the extruded material at extrusion
- B29C48/12—Articles with an irregular circumference when viewed in cross-section, e.g. window profiles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C48/00—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor
- B29C48/15—Extrusion moulding, i.e. expressing the moulding material through a die or nozzle which imparts the desired form; Apparatus therefor incorporating preformed parts or layers, e.g. extrusion moulding around inserts
- B29C48/154—Coating solid articles, i.e. non-hollow articles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29K—INDEXING SCHEME ASSOCIATED WITH SUBCLASSES B29B, B29C OR B29D, RELATING TO MOULDING MATERIALS OR TO MATERIALS FOR MOULDS, REINFORCEMENTS, FILLERS OR PREFORMED PARTS, e.g. INSERTS
- B29K2995/00—Properties of moulding materials, reinforcements, fillers, preformed parts or moulds
- B29K2995/0037—Other properties
- B29K2995/0059—Degradable
- B29K2995/006—Bio-degradable, e.g. bioabsorbable, bioresorbable or bioerodible
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29L—INDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
- B29L2031/00—Other particular articles
- B29L2031/727—Fastening elements
- B29L2031/7276—Straps or the like
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42P—INDEXING SCHEME RELATING TO BOOKS, FILING APPLIANCES OR THE LIKE
- B42P2241/00—Parts, details or accessories for books or filing appliances
- B42P2241/26—Environmental aspects
- B42P2241/28—Materials, e.g. biodegradable
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/12—All metal or with adjacent metals
- Y10T428/12493—Composite; i.e., plural, adjacent, spatially distinct metal components [e.g., layers, joint, etc.]
- Y10T428/12535—Composite; i.e., plural, adjacent, spatially distinct metal components [e.g., layers, joint, etc.] with additional, spatially distinct nonmetal component
- Y10T428/12556—Organic component
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/29—Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
- Y10T428/2913—Rod, strand, filament or fiber
- Y10T428/2933—Coated or with bond, impregnation or core
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T428/00—Stock material or miscellaneous articles
- Y10T428/29—Coated or structually defined flake, particle, cell, strand, strand portion, rod, filament, macroscopic fiber or mass thereof
- Y10T428/2913—Rod, strand, filament or fiber
- Y10T428/2933—Coated or with bond, impregnation or core
- Y10T428/294—Coated or with bond, impregnation or core including metal or compound thereof [excluding glass, ceramic and asbestos]
Definitions
- the invention relates to the use of a steel wire provided with a coating of a bio plastics material as bookbinding wire or paperclip.
- the invention also relates to a bookbinding wire or paperclip provided with a coating of a bio plastics material. More particularly, the invention relates to the use of and to a bookbinding wire and paperclip provided with a PLA coating.
- the invention further relates to a method for environmentally safe recycling said bookbinding wire or paperclip.
- Steel wires provided with an extrudable polymer coating such as polyvinylchloride or polyester, are generally known in the art.
- WO-A- 2007/060040 by Applicant describes a steel wire with thick polymer coating for use as a bookbinding wire.
- the wire combines the elasticity of a pure polymer wire with the mechanical advantages of a steel wire, with a considerable reduction in weight.
- Bio plastics that are biodegradable and/or compostable e.g. plastics synthesised by corn
- Bio plastics such as polylactide acid (PLA) have been used in the field of medicine. The high cost of the material prevented it from being used in other fields. Due to technological advances, however, the ecological advantages offered by bio plastics have now become available at a competitive price.
- PLA polylactide acid
- Bio plastics are commonly used e.g. in plastic bags, food-industry and horticulture, and also in medical instruments. The latter two applications are mainly aiming at slow biodegradation of the bio plastics (coating) during the lifetime of the product. Other applications aim at biodegradation after use of the product, whereby the product may not show decomposition during its lifetime.
- bio plastics materials exhibit the drawback of being stiff and brittle and they cannot be used for applications where resilient and softness properties are required. Therefore, bio plastics are often mixed with other polymers or plasticizers that enhance the elasticity properties, hereby however also decreasing the biodegradability and/or compostability.
- a problem with bookbinding wires is the spiral or helical binding form.
- the polymer coating needs to have specific elasticity properties to be able to withstand the torsions of the wire when manufactured and handled.
- Bookbinding wires and paperclips are a popular binding means to hold sheets of paper together.
- Bookbinding wires are used in an extensive range of applications, including but not limited to notebooks, catalogues, diaries, sample books, calendars, manuals, etc. Binding by bookbinding wire can very easily be applied with a simple and cheap machine that is available in any office or home environment. Paperclips are used very extensively for holding together smaller numbers of paper.
- Bookbinding wire and paperclips are for example made of a steel wire covered by a polymer coating.
- the steel wire provides strength; the coating prevents the steel wire core from rusting.
- Existing bookbinding wires comprise a core wire and a nylon coating, or a core wire and tin layer coating, or a Fe coating covered by a Zn coating further covered by a synthetic coating.
- Technical characteristics of the coating are low frictional resistance, perfect adhesion to the core, excellent corrosion resistance, good tensile strength, low thickness and light weight.
- the core wire is preferably a steel wire.
- Bookbinding wire shapes are known in the art, as are also paperclip shapes.
- bookbinding wire comes in spiral or helical binding.
- bookbinding wire comes in double loop combs, also called wire-o or looped wire.
- the wire binding element is formed from a length of wire which is bent to form a series of curved, hairpin shaped prongs to hold the paper.
- the bookbinding wires and paperclips of the present invention are suitable for any known or future bookbinding or paperclip folding method or shape.
- Bookbinding wires and paperclips come in all kinds of colors, which are added to the polymer coating.
- the invention provides a wire comprising a bio plastics material for use as a bookbinding wire or paperclip.
- this wire is a metal wire having a bio plastics coating.
- the coating is a closed coating offering said wire a good corrosion protection when exposed at normal ambient conditions during use as bookbinding wire or as paperclip.
- the coating is degradable, biodegradable or degradable once the wire is placed in an environment suitable for decomposition of said coating.
- the wire according to the present invention combines the features of having a good corrosion protection during its use as bookbinding wire or paperclip wire, and that the wire is degradable, biodegradable or compostable once the wire is placed in an environment suitable for decomposition of the coating.
- the coating must be such that no degradation at normal ambient conditions for a bookbinding wire or for a clip can be observed. In addition when exposed at normal ambient conditions the coating offers the wire a good corrosion protection. To test the corrosion resistance of the wire, the wire is exposed to an environment at a temperature of 40 ° and a relative humidity of 100 %. After 500 hours exposure no white rust or dark brown rust could be observed.
- the corrosion protection of the wire according to the present invention during the use as bookbinding wire or as paperclip wire, is obtained as the coating forms a closed coating.
- closed coating is meant a coating that is covering the wire fully, i.e. that is covering the wire 100 % or substantially 100 %.
- some defects can be present in the coating.
- Normal ambient conditions for a bookbinding wire are the environmental conditions such as pressure, temperature, relative humidity that are normal for a given location.
- An "environment suitable for decomposition of the coating" according to the present invention is any environment other than an ambient environment. This may be e.g. damp environment, a compost heap or a burning oven. Decomposition may be established in e.g. 75 days.
- Bio plasties have great ecological advantages: they are derived from renewable sources and decompose by microorganisms without leaving any residue or giving rise to toxic byproducts. The same amount of carbon dioxide that is given off when incinerated or decomposed, is absorbed from the atmosphere by the raw product. There is no increase of carbon dioxide, and thus no greenhouse gas emissions. Moreover, the cost of bio plastics is such that it has become competitive for use in many applications.
- bio plastics covers a new generation of degradable, biodegradable and/or compostable plastics derived from renewable raw materials such as starch (e.g. corn, potato, tapioca), cellulose, soy protein, lactic acid or any other. Bio plastics are not hazardous in production and decompose in the environment when discarded into carbon dioxide, water and biomass.
- Corn starch is currently the main raw material being used in the manufacture of bioplastic resins.
- Mater-Bi and PolyActide (PLA) are currently the two main resins (raw materials) being used today in the production of compostable and biodegradable plastics and are certified for compostability under standards set by international organizations.
- the field of bio plastics is constantly evolving with new materials and technologies being worked on and being brought to market.
- the present invention relates to the use of any of such bio plastics in coatings for bookbinding wires and paperclips.
- said bio plastics material is a biodegradable material.
- said bio plastics material is a compostable material.
- bioplastics material coating a steel wire is a degradable material.
- biodegradable material is material which will degrade from the action of naturally occurring microorganism, such as bacteria, fungi etc. over a period of time. There is no requirement for leaving no toxic residue, and no requirement for the time it needs to take to biodegrade.
- a biodegradable plastic has the ability to break down, safely and relatively quickly, by biological means, into the raw materials of nature and disappear into the environment. These products can be solids biodegrading into the soil (which we also refer to as compostable) or liquids biodegrading into water.
- Biodegradable material is intended to break up when exposed to (naturally occurring) microorganisms such as bacteria, fungi etc. over a period of time.
- compostable material is material which is capable of undergoing biological decomposition in a compost sit, such that the material is not visually distinguishable and breaks down to carbon dioxide, water, inorganic compounds, and biomass, at a rate consistent with known compostable materials (e.g. cellulose), and leaves no toxic residue
- compostable In order for a material to be called compostable, three criteria need to be met: a) biodegrade or break down into carbon dioxide, water, biomass at the same rate as cellulose (paper); b) disintegrate so that the material is indistinguishable in the compost; and c) eco-toxicity meaning that the biodegradation does not produce any toxic material and the compost can support plant growth.
- Degradable material is material which will undergo a significant change in its chemical structure under specific environmental conditions resulting in a loss of some properties.
- an embodiment of the bio plastics material is degradable, biodegradable or compostable for at least 75%, preferably at least 80%, more preferably at least 85%, yet more preferably at least 90%.
- the bio plastics coating is 95% degradable, biodegradable or compostable.
- the coating may e.g. comprise 95% bioplastic and 5 % other polymer enhancing other characteristics like distortion or elongation.
- bio plastics coating is 100% degradable, biodegradable or compostable.
- said coating comprises polylactide acid (PLA).
- said coating comprises a composition of bio plastics and conventional polymers.
- said coating comprises a mix or composition of different bio plastics.
- One bio plastics material may have more favourable features, such as e.g. elasticity, while the other may be more compostable.
- said coating of bio plastics further comprises a color masterbatch.
- said coating may be mixed with plasticizers, dyes and/or lubricants.
- said coating has an elongation of at least 4%, preferably 8%.
- said steel wire is covered with an intermediate metallic coating.
- said metallic coating is a copper, copper alloy, zinc, zinc alloy, nickel, nickel alloy, tin or tin alloy.
- the diameter of said steel wire is at least 0.2 mm and the thickness of said coating is at least 20% of the steel wire thickness.
- the total diameter of the steel wire with the coating is lower than 5 mm. In a preferred embodiment the total diameter of the steel wire with the coating is lower than 3 mm, and may vary between 0.60 mm and 1.60 mm.
- the steel wire is a low carbon steel wire with a carbon content below 0.20 wt%.
- the steel wire has preferably a carbon content ranging between 0.04 wt % and 0.20 wt %.
- the complete composition of the wire rod may be as follows : a carbon content of 0.06 wt %, a silicon content of 0.166 wt %, a chromium content of 0.042 wt %, a copper content of 0.173 wt %, a manganese content of 0.382 wt %, a molybdenum content of 0.013 wt %, a nitrogen content of 0.006 wt %, a nickel content of 0.077 wt %, a phosphorus content of 0.007 wt %, a sulfur content of 0.013 wt %.
- the steel wire is a high carbon steel wire with a carbon content above 0.25 wt% and lower than 1.0 wt%.
- the steel wire is highly mechanically deformed.
- the mechanically deformed steel wire forms a spiral binding or a double loop comb.
- the thickness of the coating may determine the decomposing rate or environment: the thicker the coating, the longer it takes to decompose. This may depend on the application of use. For use in the paper industry, the environment is not very threatening for decomposition or rusting, a thin layer may suffice to cover the core wire. For specific use in a more humid environment, such as in archives, a thicker layer may be more suitable.
- the invention provides a bookbinding wire or paperclip of steel wire provided with a bio plastics coating, according to any of the previous embodiments.
- the invention provides a bookbinding wire or paperclip of steel wire provided with a degradable, biodegradable or compostable coating, according to any of the previous embodiments.
- the coated wire according to the invention can be subjected to burning or decomposition in a suitable medium.
- the degradable, biodegradable or compostable coating will burn without being toxic, or will decompose naturally over time, and the core wire will rust away.
- the invention further provides a method for environmentally safe decomposing of bookbinding wires or paperclips comprising a bio plastics, degradable, biodegradable or compostable coating as described above.
- the method comprises the steps of a) placing said wires or paperclips in an environment suitable for decomposition of the coating in order to form holes in said coating, b) allowing said environment to form rust on the steel through said holes, and c) waiting until the coating and the steel wire have completely decomposed.
- An "environment suitable for decomposition of the coating" according to the present invention is any environment other than an ambient environment. This may be e.g. damp environment, a compost heap or a burning oven. Decomposition may be established in e.g. 75 days.
- Figure 1 shows a cross-section of a wire covered with a bio plastics resin.
- Figure 2 shows a cross-section of a wire covered with a bio plastics resin and an intermediate layer.
- Figure 3 shows a spiral loop bookbinding wire.
- Figure 4 shows a bookbinding wire with double loop combs.
- Figure 5 shows a paper clip
- Figure 1 shows a wire 10 having a steel wire core 12 covered with a bio plastics coating 14.
- the diameter of the steel core ranges from 0.60 mm to 1.60 mm.
- the thickness of the coating ranges from 0.020 mm to 0.30 mm.
- Figure 2 shows an alternative where the steel wire core 12 is also covered with a bio plastics coating 14. Additionally a superior corrosion resistance is ensured by an intermediate metallic layer 20.
- Bookbinding wires 10 typically are highly mechanically deformed in that they take a helical 30 ( Figure 3) or double loop 40 ( Figure 4) binding form.
- the helical binding form has at its end a hook form 32.
- the tensile strength of the wire must be very consistent over its length to ensure perfect comb forming.
- the bio plastics polymer coating must have specific resilience or elasticity properties to be able to withstand the torsions of the wire when manufactured and handled. Important properties for polymer coated bookbinding wires are therefore: low frictional resistance allowing a higher forming speed, which in turn results in a higher efficiency and productivity; perfect adhesion allowing extreme formability; superior corrosion resistance; aesthetic appeal, smoothness and uniformity.
- Figure 5 shows a paper clip 50 made of a wire 10 with a steel core and a bio plastics polymer coating.
- Example 1 Wire coated with PLA and color masterbatch
- PLA biodegradable polymer polyactide acid
- PLA 2002D from NatureWorks®
- PLA is derived from naturally-occurring plant sugar (corn starch).
- PLA has a glass transition temperature of between 55 and 65 0 C and a density of 1 ,25 g/cm 3 .
- PLA also has a very low degree of toxicity.
- PLA is excellent for printing on and has great tensile strength, meaning that the coating thickness can be reduced.
- color master batches are available in a wide variety of transparent and opaque colors, for use with starch-blend biopolymers, polylactic acid (PLA), copolyesters and other degradable, biodegradable or compostable resins.
- PVA polylactic acid
- copolyesters examples of providers are SUKANO ® and PolyOne Corp ® .
- Color masterbatches may specifically be added for enhancing properties like denesting, antistatic, slip, anti-block, ultraviolet barrier, blue tone and anti-fog types.
- Table 1 lists some test results. Pure PLA (natural 2002D) has an elongation of 4%, which may as such be sufficient to be applied without cracks on helical bookbinding wires in thin coatings. After addition of 2% Bio-RED (color masterbatch) the properties of the coating were strongly enhanced, up to an elongation of 8%.
- PLA Masterbatches are e.g. Bio-White, Bio-Black, Bio-Green and
- bio plastics coated steel wires of the present invention may also be used in other applications.
- a biodegradable coating such as PLA can be applied to the steel wire using the conventional extrusion process.
- a biodegradable coating such as PLA gives a good adhesion to the steel wire without the necessity of applying particular adhesives or primers.
- the adhesion between the thermoplastic material such as PLA and the steel wire can be evaluated by carrying out the following test. The PLA coating is removed in the longitudinal direction over about 5 cm by means of the sharp side of a knife. By means of the blunt side of the knife the PLA coating is slightly lifted. Finally, the PLA coating is tried to be pulled off the metal member with the fingers. The more difficult the PLA coating can be pulled off, the stronger the adhesion of the PLA to the steel wire. Tests with PLA coating have resulted in an adhesion level of 1 to 2 on a scale of 5.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Textile Engineering (AREA)
- Biological Depolymerization Polymers (AREA)
- Laminated Bodies (AREA)
- Sheet Holders (AREA)
- Paper (AREA)
- Ropes Or Cables (AREA)
Abstract
Description
Claims
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP09734667.0A EP2291251B1 (en) | 2008-04-21 | 2009-04-20 | Bookbinding wire and paper clip with biodegradable coatings and a method for their decomposition |
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP08154845 | 2008-04-21 | ||
| PCT/EP2009/002863 WO2009129979A1 (en) | 2008-04-21 | 2009-04-20 | Bookbinding wire and paper clip with biodegradable coatings |
| EP09734667.0A EP2291251B1 (en) | 2008-04-21 | 2009-04-20 | Bookbinding wire and paper clip with biodegradable coatings and a method for their decomposition |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2291251A1 true EP2291251A1 (en) | 2011-03-09 |
| EP2291251B1 EP2291251B1 (en) | 2014-06-04 |
Family
ID=39619079
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP09734667.0A Not-in-force EP2291251B1 (en) | 2008-04-21 | 2009-04-20 | Bookbinding wire and paper clip with biodegradable coatings and a method for their decomposition |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20110033727A1 (en) |
| EP (1) | EP2291251B1 (en) |
| JP (1) | JP5503639B2 (en) |
| CN (1) | CN102015150A (en) |
| BR (1) | BRPI0910774A2 (en) |
| ES (1) | ES2486565T3 (en) |
| WO (1) | WO2009129979A1 (en) |
Families Citing this family (8)
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| WO2012053929A1 (en) * | 2010-10-18 | 2012-04-26 | Basargin Oleg Sergeevich | Universal clip |
| CA2842250C (en) | 2011-07-18 | 2020-05-12 | ACCO Brands Corporation | Binding system for retaining bound components |
| US8963002B2 (en) | 2012-05-30 | 2015-02-24 | James C. Wang | Foldable and restrainable cables |
| CN102907362B (en) * | 2012-11-05 | 2014-05-28 | 连云港耐特网具有限公司 | Alga-resistant type sea farming net |
| DE102014113029A1 (en) * | 2014-09-10 | 2016-03-10 | Drahtwerk Friedr. Lötters Gmbh & Co. Kg | binding spiral |
| CN106515251B (en) * | 2015-09-12 | 2018-08-28 | 艾派集团(中国)有限公司 | A kind of coil and its making apparatus with crotch lock |
| US20220087237A1 (en) * | 2020-09-18 | 2022-03-24 | Advanced Angling Materials, Inc. | Fishing hook and tackle |
| KR102851828B1 (en) * | 2023-04-17 | 2025-08-27 | 박용임 | The manufacturing methond and apparatus for paper-made binder |
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| JP2004167891A (en) * | 2002-11-21 | 2004-06-17 | Takiron Co Ltd | Coated iron wire and net body |
| CN100457562C (en) * | 2003-04-18 | 2009-02-04 | 花王株式会社 | Bag (CN) |
| DK1674405T3 (en) * | 2003-10-14 | 2010-10-18 | Kyowa Ltd | Non-metallic binding strip |
| US7250213B2 (en) * | 2003-10-16 | 2007-07-31 | American Wire Tie Inc. | Textured wire tie and methods of making same |
| JP2006007667A (en) * | 2004-06-28 | 2006-01-12 | Sasaoka Kogyo:Kk | Filing utensil |
| JP2006159627A (en) * | 2004-12-07 | 2006-06-22 | Nippon Steel Corp | Biodegradable painted metal |
| US20070184239A1 (en) * | 2006-02-07 | 2007-08-09 | Mallory John C | Yard waste storage and disposal system |
-
2009
- 2009-04-20 US US12/988,594 patent/US20110033727A1/en not_active Abandoned
- 2009-04-20 CN CN200980113924XA patent/CN102015150A/en active Pending
- 2009-04-20 WO PCT/EP2009/002863 patent/WO2009129979A1/en not_active Ceased
- 2009-04-20 BR BRPI0910774A patent/BRPI0910774A2/en not_active IP Right Cessation
- 2009-04-20 ES ES09734667.0T patent/ES2486565T3/en active Active
- 2009-04-20 EP EP09734667.0A patent/EP2291251B1/en not_active Not-in-force
- 2009-04-20 JP JP2011505411A patent/JP5503639B2/en not_active Expired - Fee Related
Non-Patent Citations (1)
| Title |
|---|
| See references of WO2009129979A1 * |
Also Published As
| Publication number | Publication date |
|---|---|
| ES2486565T3 (en) | 2014-08-18 |
| JP2011518062A (en) | 2011-06-23 |
| WO2009129979A1 (en) | 2009-10-29 |
| JP5503639B2 (en) | 2014-05-28 |
| BRPI0910774A2 (en) | 2015-09-29 |
| EP2291251B1 (en) | 2014-06-04 |
| US20110033727A1 (en) | 2011-02-10 |
| CN102015150A (en) | 2011-04-13 |
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